Glioblastoma Clinical Trial
Official title:
Phase II Study of Short Course Hypofractionated Proton Beam Therapy Incorporating 18F-DOPA-PET/MRI for Elderly Patients With Newly Diagnosed Glioblastoma
This phase II trial studies how well fluorodopa F 18-positron emission tomography/magnetic resonance imaging scan (18F-DOPA-PET/MRI) works in imaging elderly patients with newly diagnosed grade IV malignant glioma or glioblastoma during planning for a short course of proton beam radiation therapy. 18F-DOPA is a chemical tracer that highlights certain cells during imaging. PET scan, is a metabolic imaging technique which takes advantage of how tumor cells take up nutrients differently than normal tissue. MRI scans are used to guide radiation therapy for most brain tumors. Hypofractionated proton beam therapy delivers higher doses of radiation therapy over a shorter period of time and may kill more tumor cells and have fewer side effects. Using 18FDOPA-PET scans along with MRI scans may be able to provide the radiation doctor with information on tumor tissue versus normal, healthy tissue and may help the doctor more accurately plan the radiation treatment.
PRIMARY OBJECTIVE: I. Compare overall survival at 12 months for grade IV glioma patients after radiation therapy targeting volumes designed with both 18F-DOPA-PET and conventional magnetic resonance (MR) image (or PET/computed tomography [CT]) information with historical controls. SECONDARY OBJECTIVES: I. Compare progression free survival at 12 months after radiation therapy targeting volumes designed with both 18F-DOPA-PET and conventional MR image information with historical controls. II. Determine acute and late effect toxicity after hypofractionated proton beam radiotherapy treatment including areas of high 18F-DOPA-PET uptake (T/N > 2.0). CORRELATIVE RESEARCH OBJECTIVES: I. Compare radiotherapy (RT) treatment volumes defined by MR only with RT treatment volumes defined with both PET and MR information for grade IV glioma patients. II. Compare differences in RT volumes identified using biopsy-validated thresholds as highly aggressive disease comparing 18F-DOPA uptake and relative cerebral blood volume (relCBV) from perfusion MRI (pMRI) as well as differences in RT volumes identified using biopsy-validated thresholds as tumor extent comparing 18F-DOPA uptake and diffusion maps from diffusion tensor imaging (DTI) will be evaluated. III. Evaluate quality of life after radiotherapy using European Organization for Research and Treatment of Cancer (EORTC) questionnaires compared with historical controls from Keim-Guibert et al. IV. Compare differences in proton radiation planning utilizing radiobiologic modeling/evaluation techniques performed at Mayo Clinic Rochester to linear energy transfer distribution evaluation at Mayo Clinic Arizona. OUTLINE: Patients receive 18F-DOPA intravenously (IV) and undergo PET/MRI or PET/CT imaging scan. Patients then receive proton beam radiotherapy over 5 or 10 consecutive days excluding weekend and standard of care temozolomide on days 1-7 or 1-14. Beginning cycles 2, patients receive standard of care temozolomide on days 1-5. Cycles with temozolomide repeat every 28 days for up to 7 cycles in the in the absence of disease progression or unacceptable toxicity. After completion of study treatment, patients are followed up every 2 months for 1 year, and then periodically for up to 5 years. ;
Status | Clinical Trial | Phase | |
---|---|---|---|
Recruiting |
NCT05664243 -
A Phase 1b / 2 Drug Resistant Immunotherapy With Activated, Gene Modified Allogeneic or Autologous γδ T Cells (DeltEx) in Combination With Maintenance Temozolomide in Subjects With Recurrent or Newly Diagnosed Glioblastoma
|
Phase 1/Phase 2 | |
Completed |
NCT02768389 -
Feasibility Trial of the Modified Atkins Diet and Bevacizumab for Recurrent Glioblastoma
|
Early Phase 1 | |
Recruiting |
NCT05635734 -
Azeliragon and Chemoradiotherapy in Newly Diagnosed Glioblastoma
|
Phase 1/Phase 2 | |
Completed |
NCT03679754 -
Evaluation of Ad-RTS-hIL-12 + Veledimex in Subjects With Recurrent or Progressive Glioblastoma, a Substudy to ATI001-102
|
Phase 1 | |
Completed |
NCT01250470 -
Vaccine Therapy and Sargramostim in Treating Patients With Malignant Glioma
|
Phase 1 | |
Terminated |
NCT03927222 -
Immunotherapy Targeted Against Cytomegalovirus in Patients With Newly-Diagnosed WHO Grade IV Unmethylated Glioma
|
Phase 2 | |
Recruiting |
NCT03897491 -
PD L 506 for Stereotactic Interstitial Photodynamic Therapy of Newly Diagnosed Supratentorial IDH Wild-type Glioblastoma
|
Phase 2 | |
Active, not recruiting |
NCT03587038 -
OKN-007 in Combination With Adjuvant Temozolomide Chemoradiotherapy for Newly Diagnosed Glioblastoma
|
Phase 1 | |
Completed |
NCT01922076 -
Adavosertib and Local Radiation Therapy in Treating Children With Newly Diagnosed Diffuse Intrinsic Pontine Gliomas
|
Phase 1 | |
Recruiting |
NCT04391062 -
Dose Finding for Intraoperative Photodynamic Therapy of Glioblastoma
|
Phase 2 | |
Active, not recruiting |
NCT03661723 -
Pembrolizumab and Reirradiation in Bevacizumab Naïve and Bevacizumab Resistant Recurrent Glioblastoma
|
Phase 2 | |
Active, not recruiting |
NCT02655601 -
Trial of Newly Diagnosed High Grade Glioma Treated With Concurrent Radiation Therapy, Temozolomide and BMX-001
|
Phase 2 | |
Completed |
NCT02206230 -
Trial of Hypofractionated Radiation Therapy for Glioblastoma
|
Phase 2 | |
Completed |
NCT03493932 -
Cytokine Microdialysis for Real-Time Immune Monitoring in Glioblastoma Patients Undergoing Checkpoint Blockade
|
Phase 1 | |
Terminated |
NCT02709889 -
Rovalpituzumab Tesirine in Delta-Like Protein 3-Expressing Advanced Solid Tumors
|
Phase 1/Phase 2 | |
Recruiting |
NCT06058988 -
Trastuzumab Deruxtecan (T-DXd) for People With Brain Cancer
|
Phase 2 | |
Completed |
NCT03018288 -
Radiation Therapy Plus Temozolomide and Pembrolizumab With and Without HSPPC-96 in Newly Diagnosed Glioblastoma (GBM)
|
Phase 2 | |
Not yet recruiting |
NCT04552977 -
A Trail of Fluzoparil in Combination With Temozolomide in Patients With Recurrent Glioblastoma
|
Phase 2 | |
Withdrawn |
NCT03980249 -
Anti-Cancer Effects of Carvedilol With Standard Treatment in Glioblastoma and Response of Peripheral Glioma Circulating Tumor Cells
|
Early Phase 1 | |
Terminated |
NCT02905643 -
Discerning Pseudoprogression vs True Tumor Growth in GBMs
|